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Entropic uncertainty relation in a two-qutrit system with external magnetic field and Dzyaloshinskii-Moriya interaction under intrinsic decoherence

机译:具有外部磁场的两QUTRIT系统中的熵不确定性关系与内在磁场下的Dzyaloshinskii-Moriya相互作用

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摘要

In this paper, we explore the dynamic behaviors of entropic uncertainty relation in a two-qutrit system which is in the presence of external magnetic field and Dzyaloshinskii-Moriya (DM) interaction under intrinsic decoherence. The effects of the isotropic bilinear interaction, the external magnetic field, the DM interaction strength, as well as the intrinsic decoherence on the entropic uncertainty relation have been demonstrated in detail. Compared with previous results, our results show that, controlling the isotropic bilinear interaction parameter J, the external magnetic field strength , the DM interaction parameter D can result in inflation of the uncertainty, while increasing the intrinsic decoherence parameter can lift the uncertainty of the measurement. In particularly, under certain conditions (e.g., parameters J, and D are large enough), the entropic uncertainty will ultimately tend to a stable value and be immune to decoherence.
机译:在本文中,我们探讨了一个双Qutrit系统中的熵不确定性关系的动态行为,这是在内在的堵塞下的外部磁场和Dzyaloshinskii-moriya(DM)相互作用。 已经详细说明了各向同性双线性相互作用,外部磁场,DM相互作用强度的影响,以及对熵不确定性关系的内在堵塞。 与先前的结果相比,我们的结果表明,控制各向同性双线性相互作用参数J,外部磁场强度,DM交互参数D可以导致不确定度的充气,同时增加内在拆卸参数可以提升测量的不确定性 。 特别地,在某些条件下(例如,参数J和D足够大),熵不确定度最终将趋于稳定的值并且免受脱干的影响。

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